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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A numerical and experimental study of the compression uniaxial properties of PLA manufactured with FDM technology based on product specifications
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A numerical and experimental study of the compression uniaxial properties of PLA manufactured with FDM technology based on product specifications

机译:基于产品规格的FDM技术制造的PLA压缩单轴性能的数值和实验研究

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摘要

This paper presents a numerical and experimental study of the compression uniaxial properties of PLA material manufactured with FDM based on product specifications. A first experimental test in accordance with the requirements and conditions established in the ISO 604 standard characterizes the mechanical and elastic properties of PLA manufactured with FDM technology and product requirements in a uniaxial compression stress field by testing six specimens. A second experimental test allows analyzing the structural behavior of the industrial case, evaluating the compression stiffness, the compression yield stress, the field of displacements, and stress along its elastic area until reaching the compression yield stress and the ultimate yield stress data. To improve the structural analysis of the case study, a numerical validation was carried out using two analytical models. The first analytical model applies an interpolation procedure to the experimental results of the tested specimens in order to characterize the uniaxial tension-compression curve versus the nominal deformations by means of an 8-degree polynomial function. The second model defines the plastic material as elastic and isotropic with Young's compression modulus constant and according to the guidelines established in ISO standard 604. The comparison between experimental tests and numerical simulation results for the study case verify that the new model that uses the proposed polynomial function is closer to the experimental solution with only an 0.36% error, in comparison with the model with Young's compression modulus constant that reaches an error of 4.27%. The results of the structural analysis of the mechanical element indicate that the elastic region of the plastic material PLA manufactured with FDM can be modeled numerically as an isotropic material, using the elastic properties from the experimental results of the specimens tested according to ISO standard 604. In this way, it is possible to characterize the PLA FDM material as isotropic, obtaining as an advantage its easy definition in the numerical simulation software as it does not require the modification of the constitutive equations in the material database. SEM micrographs have indicated that the fracture of the failed test specimens is of the brittle type, mainly caused by the separation between the central plastic filament layers of the specimens. The results presented suggest that the use of FDM technology with PLA material is promising for the manufacture of low volume industrial components that are subject to compression efforts or for the manufacture of components by the user.
机译:本文介绍了基于产品规格的FDM制造的PLA材料压缩单轴性能的数值和实验研究。根据ISO 604标准中建立的要求和条件的第一个实验测试表征了通过测试六个标本用FDM技术制造的PLA的机械和弹性性能,并通过测试六个标本来进行单轴压缩应力场。第二种实验测试允许分析工业壳体的结构行为,评估压缩刚度,压缩屈服应力,位移领域,并且沿其弹性区域的应力,直到达到压缩屈服应力和最终产量应力数据。为了改善案例研究的结构分析,使用两个分析模型进行数值验证。第一分析模型将插值过程应用于测试样本的实验结果,以便通过8度多项式函数表征单轴张力 - 压缩曲线与标称变形。第二种模型将塑料材料定义为具有杨氏压缩模量的弹性和各向同性,并且根据ISO标准604中建立的指导方针。研究案例的实验测试与数值模拟结果的比较验证了使用所提出的多项式的新模型功能更接近实验解决方案,只有0.36%的误差,与杨氏压缩模量常数的模型相比,达到4.27%的误差。机械元件的结构分析的结果表明,使用根据ISO标准604测试的试样的实验结果,可以用FDM制造的塑料材料PLA的弹性区域以各向同性材料进行数字。以这种方式,可以将PLA FDM材料表征为各向同性,作为其在数值模拟软件中的容易定义中获得的优点,因为它不需要改进材料数据库中的本构方程。 SEM显微照片表明,失效的试样的断裂是脆性类型,主要是由标本中央塑料长丝层之间的分离引起的。提出的结果表明,使用PLA材料的FDM技术是有希望的,用于制造受压缩力的低卷工业部件,或者通过用户制造组件。

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